海岸带管理 http://coastaldata.ecnu.edu.cn/zh-hans zh-hans 近30年中国海岸带养殖塘时空变化遥感追踪 http://coastaldata.ecnu.edu.cn/zh-hans/jin30nianzhongguohaiandaiyangzhitangshikongbianhuayaoganzhuizong <span>近30年中国海岸带养殖塘时空变化遥感追踪</span> <span><span lang="" about="/zh-hans/user/28" typeof="schema:Person" property="schema:name" datatype="">contentmananger</span></span> <span>周日, 09/19/2021 - 12:35</span> <div class="field field--name-body field--type-text-with-summary field--label-hidden field__item"><p><span lang="EN-US" xml:lang="EN-US">— <em>International Journal of Applied Earth Observations and Geoinformation</em>, </span>Vol<span lang="EN-US" xml:lang="EN-US">102,  102383, Jun 2021</span></p> <p><strong><span style="font-family:宋体;mso-bidi-font-family:宋体">段元强<sup><span lang="EN-US" xml:lang="EN-US">a</span></sup><span lang="EN-US" xml:lang="EN-US">, </span>田波<sup><span lang="EN-US" xml:lang="EN-US">a,*</span></sup><span lang="EN-US" xml:lang="EN-US">, </span>李行<sup><span lang="EN-US" xml:lang="EN-US">b</span></sup><span lang="EN-US" xml:lang="EN-US">, </span>刘东艳<sup><span lang="EN-US" xml:lang="EN-US">a</span></sup><span lang="EN-US" xml:lang="EN-US">, Dhritiraj Sengupta<sup> a</sup>, </span>王玉珏<sup><span lang="EN-US" xml:lang="EN-US"> a</span></sup><span lang="EN-US" xml:lang="EN-US">, </span>彭亚<sup><span lang="EN-US" xml:lang="EN-US">a</span></sup></span></strong><span style="font-family:宋体;mso-bidi-font-family:宋体"><span lang="EN-US" xml:lang="EN-US"><p></p></span></span></p> <p><strong><span lang="EN-US" xml:lang="EN-US">a  </span>华东师范大学,河口海岸国家重点实验室<span lang="EN-US" xml:lang="EN-US">, </span>中国,上海<span lang="EN-US" xml:lang="EN-US">, 200041</span></strong><span lang="EN-US" xml:lang="EN-US"><p></p></span></p> <p><strong><span lang="EN-US" xml:lang="EN-US">b  </span>江苏师范大学,地理测绘与城乡规划学院,中国,徐州,<span lang="EN-US" xml:lang="EN-US">221116</span></strong><span lang="EN-US" xml:lang="EN-US"><p></p></span></p> <pre> <strong><span style="font-family:宋体;mso-bidi-font-family:宋体">关键词:</span></strong><span style="font-family:宋体;mso-bidi-font-family:宋体">水产养殖池塘,遥感,时空分布,滨海低洼地,海岸带围垦,粮食安全<span lang="EN-US" xml:lang="EN-US"><p></p></span></span></pre> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;color:black;background:&#10;white;mso-font-kerning:0pt">人口增长引起水产品需求快速增加,而野生捕捞产量受环境承载力的限制趋于饱和,这使得水产养殖业在过去数十年间迅速发展。水产养殖能够有效保障人类粮食安全和营养供给,但同时也带来了诸多环境问题。中国海岸带地区是世界上最为集中的水产养殖池塘聚集地。准确、高效地获取中国养殖池塘的时空分布信息对于产业科学管理和可持续发展意义重大。</span><span lang="EN-US" style="font-size:12.0pt;font-family:宋体;mso-bidi-font-family:宋体;&#10;mso-font-kerning:0pt" xml:lang="EN-US"><p></p></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;color:black;background:&#10;white;mso-font-kerning:0pt">在养殖池塘分布广泛的中国滨海地区,根据其典型网格状水域特征构建自动提取决策树模型。在利用<span lang="EN-US" xml:lang="EN-US">MNDWI</span>和<span lang="EN-US" xml:lang="EN-US">AWEI</span>水指数突出光谱特征的基础上,通过<span lang="EN-US" xml:lang="EN-US">8</span>邻域<span lang="EN-US" xml:lang="EN-US">Laplacian</span>卷积算子突出空间结构特征,同时借助<span lang="EN-US" xml:lang="EN-US">SRTM </span>高程数据剔除地形复杂的内陆腹地区域,最终实现养殖池塘的自动提取。利用随机样点评估该方法,<span lang="EN-US" xml:lang="EN-US">2020</span>年制图结果的总体精度<span lang="EN-US" xml:lang="EN-US">OA</span>为<span lang="EN-US" xml:lang="EN-US">0.972±0.006,</span>养殖池塘提取结果的用户精度<span lang="EN-US" xml:lang="EN-US">UA</span>和生产者精度<span lang="EN-US" xml:lang="EN-US">PA</span>分别达到<span lang="EN-US" xml:lang="EN-US">0.852 ±0.044</span>和<span lang="EN-US" xml:lang="EN-US">0.797 ± 0.033</span>。基于<span lang="EN-US" xml:lang="EN-US">Google Earth Engine (GEE)</span>云计算平台,快速完成近<span lang="EN-US" xml:lang="EN-US">30</span>年<span lang="EN-US" xml:lang="EN-US">9</span>个时期(<span lang="EN-US" xml:lang="EN-US">1990</span>,<span lang="EN-US" xml:lang="EN-US">1995</span>,<span lang="EN-US" xml:lang="EN-US">2000</span>,<span lang="EN-US" xml:lang="EN-US">2005</span>,<span lang="EN-US" xml:lang="EN-US">2008</span>,<span lang="EN-US" xml:lang="EN-US">2011</span>,<span lang="EN-US" xml:lang="EN-US">2014</span>,<span lang="EN-US" xml:lang="EN-US">2017</span>,<span lang="EN-US" xml:lang="EN-US">2020</span>)中国滨海养殖池塘时空分布数据获取。</span><span lang="EN-US" style="font-size:12.0pt;font-family:宋体;mso-bidi-font-family:宋体;mso-font-kerning:&#10;0pt" xml:lang="EN-US"><p></p></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;color:black;background:&#10;white;mso-font-kerning:0pt">结果表明,中国滨海养殖池塘规模由<span lang="EN-US" xml:lang="EN-US">1990</span>年的<span lang="EN-US" xml:lang="EN-US">5919.59 km<sup>2</sup></span>增加到<span lang="EN-US" xml:lang="EN-US">2020</span>年的<span lang="EN-US" xml:lang="EN-US">9613.66 km<sup>2</sup></span>,整体面积变化呈现<span lang="EN-US" xml:lang="EN-US">2017</span>年前增加之后减少的趋势。叠加历年养殖池塘结果发现,<span lang="EN-US" xml:lang="EN-US">30</span>年间累积建造了约<span lang="EN-US" xml:lang="EN-US">21997.90 km<sup>2</sup></span>,期间超过<span lang="EN-US" xml:lang="EN-US">1.2</span>万<span lang="EN-US" xml:lang="EN-US">km<sup>2</sup></span>转为其它土地利用类型。从空间分布特征来看,特大规模养殖池塘区域多分布在腹地广阔的河口三角洲和平原海岸地带。</span><span lang="EN-US" style="font-size:12.0pt;font-family:宋体;mso-bidi-font-family:宋体;mso-font-kerning:&#10;0pt" xml:lang="EN-US"><p></p></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;color:black;background:&#10;white;mso-font-kerning:0pt">分析养殖池塘规模变化的驱动因素,发现除地理条件限制外,不同的经济发展水平对于养殖池塘的扩张或缩减有起到关键作用。虽各地区略有差异,但整体来看,各地区经济发展水平较弱时,水产养殖作为高收益的生产方式规模快速扩张;之后经济发展到较高水平,水产养殖逐步面临缩减。以珠江三角洲为例具体分析,<span lang="EN-US" xml:lang="EN-US">2000</span>年前后珠三角养殖池塘面积达到最大值,之后缓慢减少。与之对应的是,建成区不透水面面积迅速增加,大量养殖池塘被转为建筑用地使用。</span><span lang="EN-US" style="font-size:12.0pt;font-family:宋体;mso-bidi-font-family:宋体;&#10;mso-font-kerning:0pt" xml:lang="EN-US"><p></p></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;color:black;background:&#10;white;mso-font-kerning:0pt">中国滨海养殖池塘规模迅速扩大的另一个重要原因是近海的大规模围垦。历年岸线叠加养殖池塘空间分布数据,过去<span lang="EN-US" xml:lang="EN-US">30</span>年,海岸带围垦累积为水产养殖池塘建设提供了约<span lang="EN-US" xml:lang="EN-US">22%</span>的用地面积。另外,研究认为中国水产养殖业发展多受到政策导向。目前中国对环境保护的要求日趋严格,围垦禁令、湿地保护等一系列政策实施会限制养殖池塘用地的补充,同时滨海土地利用竞争日趋激烈,养殖池塘规模会进一步缩减。但由于养殖池塘作为最重要的水产食品的生产方式,中国滨海仍将长期保持较大规模。</span><span lang="EN-US" style="font-size:12.0pt;font-family:宋体;mso-bidi-font-family:宋体;&#10;mso-font-kerning:0pt" xml:lang="EN-US"><p></p></span></p> </div> <div class="field field--name-field-portfolio-tags field--type-entity-reference field--label-hidden field__item"><a href="/en/taxonomy/term/11" hreflang="en">海岸带管理</a></div> <div> <div class="item"> <div class="item-image"> <a href="/zh-hans/jin30nianzhongguohaiandaiyangzhitangshikongbianhuayaoganzhuizong"><img src="/sites/default/files/portfolio-images/Fig6_0.png" alt="" loading="lazy" typeof="foaf:Image" /> </a> </div> </div></div> <div class="field field--name-field-zhuyaojieguo field--type-text-long field--label-above"> <div class="field__label">主要结果</div> <div class="field__item"><img alt="图1" data-entity-type="file" data-entity-uuid="775f5679-1719-4560-828c-53bd34b87dca" src="/sites/default/files/inline-images/Fig1_0.png" class="align-center" width="960" height="724" loading="lazy" /><img alt="图2" data-entity-type="file" data-entity-uuid="54d2c9a0-382c-485b-a7df-de03470951cc" src="/sites/default/files/inline-images/Fig2.png" class="align-center" width="960" height="720" loading="lazy" /><img alt="图3" data-entity-type="file" data-entity-uuid="438bdd8d-e50f-4251-90ff-e2e081d51582" src="/sites/default/files/inline-images/Fig3.png" class="align-center" width="960" height="720" loading="lazy" /><img alt="图4" data-entity-type="file" data-entity-uuid="33a6541a-5de9-48a1-af01-6e24a089d8dc" src="/sites/default/files/inline-images/Fig4.png" class="align-center" width="960" height="720" loading="lazy" /><img alt="图5" data-entity-type="file" data-entity-uuid="4dc07efb-69f6-4054-977c-e2d890915898" src="/sites/default/files/inline-images/Fig5.png" class="align-center" width="960" height="720" loading="lazy" /> <hr /> <p class="Default"><span lang="EN-US" xml:lang="EN-US" xml:lang="EN-US">DOI: <a href="https://doi.org/10.1016/j.jag.2021.102383" name="_Hlk82892067" id="_Hlk82892067">https://doi.org/10.1016/j.jag.2021.102383</a><p></p></span></p> </div> </div> Sun, 19 Sep 2021 10:35:19 +0000 contentmananger 157 at http://coastaldata.ecnu.edu.cn 我国海岸带湿地生态系统退化成因及其对策 http://coastaldata.ecnu.edu.cn/zh-hans/woguohaiandaishideshengtaixitongtuihuachengyinjiqiduice <span>我国海岸带湿地生态系统退化成因及其对策</span> <span><span lang="" about="/zh-hans/user/28" typeof="schema:Person" property="schema:name" datatype="">contentmananger</span></span> <span>周六, 09/24/2016 - 15:22</span> <div class="field field--name-body field--type-text-with-summary field--label-hidden field__item"><p><span lang="EN-US" xml:lang="EN-US">— </span><i style="mso-bidi-font-style:normal">中国科学院院刊</i><span lang="EN-US" xml:lang="EN-US">, Vol31, P1157-1166, Oct 2016<p></p></span></p> <p><strong>周云轩,田 波,黄 颖,吴文挺,戚纤云,舒敏彦,胥 为,葛 芳,魏 伟,黄盖先,张 婷</strong></p> <p><span lang="EN-US" xml:lang="EN-US"><p></p></span></p> <p><strong>华东师范大学,河口海岸国家重点实验室<span lang="EN-US" xml:lang="EN-US">, </span>中国,上海<span lang="EN-US" xml:lang="EN-US">, 200041</span></strong><span lang="EN-US" xml:lang="EN-US"><p></p></span></p> <pre> <strong><span style="font-family:宋体;mso-bidi-font-family:宋体">关键词:</span></strong><span style="font-family:宋体;mso-bidi-font-family:宋体">海岸带湿地,生态系统,退化,湿地修复,与自然共建</span></pre> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;color:black;background:white">海岸带湿地生态系统是位于海陆交互界面,受陆海相互作用最为显著的生态系统,包括潮间带盐水沼泽、红树林以及海草床等,是世界上生产力最高的生态系统之一。目前,全球范围内共有海岸带湿地生态系统<span lang="EN-US" xml:lang="EN-US"> 4.5×108 ha</span>,覆盖自低纬度(赤道)至高纬度(苔原)的主要河口与大部分海岸带地区。由于其独特的生态系统结构和生物地球化学循环过程,海岸带湿地生态系统为全球人类活动最为活跃的海岸带地区提供了海岸防护、侵蚀控制、蓝碳固定、水质净化、污染物降解、区域气候调节、动植物栖息地提供以及教育、科研、景观等生态与人文服务,单位面积的海岸带生态系统为海岸带地区提供的服务功能价值达<span lang="EN-US" xml:lang="EN-US">10000$/ha</span>,其生态环境的价值与意义非同一般。<span lang="EN-US" xml:lang="EN-US"><p></p></span></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;color:black;background:white">海岸带湿地是脆弱的生态敏感区,也是我国湿地保护的薄弱环节。近年来,由于海平面上升加剧、环境污染、外来物种入侵、海岸带围垦等自然和人为因素的影响,海岸带湿地受到的威胁日趋严重,海岸带湿地生态系统不断退化甚至消失,给我国沿海城市带来巨大生态 威胁和环境风险。研究表明,在过去的<span lang="EN-US" xml:lang="EN-US">60</span>多年里,由于自然和人为因素的影响,我国的海岸带湿地遭受到极大的破坏,海岸湿地资源的不合理开发和利用导致海岸带湿地生态系统的结构和功能发生重大变化。我国海岸带湿地生态系统面临极大的威胁。<span lang="EN-US" xml:lang="EN-US"><p></p></span></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;mso-fareast-font-family:&#10;等线;mso-hansi-font-family:等线;color:black;background:white">本文通过对海岸带湿地退化多重因素,如海岸带围垦、城市化发展、海岸养殖、外来物种入侵、海岸侵蚀、环境污染及海平面上升等进行分析,探讨并提出适应我国海岸带地区发展特征的<span lang="EN-US" xml:lang="EN-US">“</span>与自然共建<span lang="EN-US" xml:lang="EN-US">”</span>湿地修复、湿地生态系统自然资本有效评估及补偿、湿地综合监测等应对策略,为实现我国海岸带地区科学和合理的可持续发展提供决策依据。<span lang="EN-US" xml:lang="EN-US"><p></p></span></span></p> <p align="left" class="MsoNormal" style="mso-margin-top-alt:auto;mso-margin-bottom-alt:&#10;auto;text-align:left;text-indent:21.0pt;mso-pagination:widow-orphan"><span lang="EN-US" style="mso-bidi-font-size:10.5pt;mso-ascii-font-family:等线;&#10;mso-fareast-font-family:等线;mso-hansi-font-family:等线;mso-bidi-font-family:宋体;&#10;color:black;background:white;mso-font-kerning:0pt" xml:lang="EN-US"><p></p></span></p> </div> <div class="field field--name-field-portfolio-tags field--type-entity-reference field--label-hidden field__item"><a href="/en/taxonomy/term/11" hreflang="en">海岸带管理</a></div> <div> <div class="item"> <div class="item-image"> <a href="/zh-hans/woguohaiandaishideshengtaixitongtuihuachengyinjiqiduice"><img src="/sites/default/files/portfolio-images/1_1.png" alt="" loading="lazy" typeof="foaf:Image" /> </a> </div> </div></div> <div class="field field--name-field-zhuyaojieguo field--type-text-long field--label-above"> <div class="field__label">主要结果</div> <div class="field__item"><p> </p> <img alt="1" data-entity-type="file" data-entity-uuid="2617e42f-d5c6-4757-b81f-c9773eac2076" src="/sites/default/files/inline-images/1_1.png" class="align-center" width="789" height="724" loading="lazy" /> <hr /> <p class="MsoNormal"><span lang="EN-US" xml:lang="EN-US" xml:lang="EN-US">DOI:10.16418/j.issn.1000-3045.2016.10.004<p></p></span></p> </div> </div> Sat, 24 Sep 2016 13:22:38 +0000 contentmananger 162 at http://coastaldata.ecnu.edu.cn